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Experimental Investigations on Drilling GFRP Epoxy Composite Laminates Using Specialized and Conventional Uncoated Cemented Carbide Drills

机译:使用专用和常规未涂层硬质合金钻头钻制GFRP环氧复合材料层压板的实验研究

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摘要

The growing demand of the fiber reinforced plastics (FRPs) in lightweight engineering has led to a need for assessing and quantifying the workpiece material defects, like hole exit delamination, during their drilling process. This article presents the experimental investigations on in-process drilling load profiles and a quantitative analysis of the induced hole exit delamination in drilling glass fiber reinforced plastic (GFRP) epoxy composite laminates, using various uncoated carbide drill bits (two specialized and a conventional one). The aim of studying and analyzing the in-process load profiles, in this work, is necessary in better comprehending the interaction between the tool and the workpiece material, with respect to the induced peak loads. It may further be helpful for determining and assessing the root cause of the induced delamination damage. Moreover, it is shown that the design and geometry of a particular drill bit also plays a vital role regarding its cutting loads and delamination results. The specialized tools were found to be much better than their conventional counterpart. Furthermore, subsequent drilling was conducted onto some predrilled pilot-holes using the same specialized drills, to test the chisel edge effect. The research emphasizes a need to pay attention to the quality and design of a drill bit (cutting edge corner).
机译:轻型工程中对纤维增强塑料(FRP)的需求不断增长,导致需要在钻孔过程中评估和量化工件材料缺陷,例如孔出口分层。本文介绍了使用各种未涂覆的硬质合金钻头(两个专用钻头和一个传统钻头)对玻璃纤维增​​强塑料(GFRP)环氧复合材料层压板进行钻进过程中钻探载荷分布的实验研究,以及对诱导的孔出口分层的定量分析。 。在这项工作中,研究和分析过程中载荷分布的目的对于更好地理解工具和工件材料之间的相互作用(相对于引起的峰值载荷)是必要的。这对于确定和评估诱发分层损坏的根本原因可能会有所帮助。此外,还显示出特定钻头的设计和几何形状在切削负荷和分层结果方面也起着至关重要的作用。发现专用工具比传统工具要好得多。此外,随后使用相同的专用钻头在一些预钻孔的导向孔上进行钻孔,以测试凿子边缘效应。研究强调需要注意钻头(切削刃角)的质量和设计。

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